• STC3115 Module

    STC3115 Module

    This project is a Battery Management System (BMS) built around STMicroelectronics' STC3115AIQT battery monitor IC. It uses I2C for communication, features alarm management, and supports battery charging. The power supply, battery connection points, and debug interface are facilitated through connectors. #project #Template #charger #monitor #reusable #module #batterycharger #template #bms #STC3115 #stm

    vfelipe


  • [test] Real Professional Project

    [test] Real Professional Project

    Arduino Uno shield used to monitor chimney smoke and provide feedback to stove. This shield powers the Arduino using TEGs and a battery. This shield provides power to an LED, fans, and a light sensor used to detect light intensity.

    greg


  • STC3115 Reference Design

    STC3115 Reference Design

    This project is a Battery Management System (BMS) built around STMicroelectronics' STC3115AIQT battery monitor IC. It uses I2C for communication, features alarm management, and supports battery charging. The power supply, battery connection points, and debug interface are facilitated through connectors. #project #Template #charger #referenceDesign #batterycharger #template #bms #monitor #STC3115 #stm #reference-design #polygon

    vasy_skral

    &

    cherepanyadima


  • [Demo-Test] Component Comparison

    [Demo-Test] Component Comparison

    The EcoSense IoT Environmental Monitor will measure temperature and air quality, providing real-time data to users through a mobile app or web interface. The device will be compact, easy to install, and user-friendly, offering insights into the indoor environmental conditions to promote health and well-being. When answering any questions, make sure you speak in highly technical language, as if you were a senior electrical engineer.

    fluxcs

    &

    nico


  • [test] layerViewController tm2m

    [test] layerViewController tm2m

    Arduino Uno shield used to monitor chimney smoke and provide feedback to stove. This shield powers the Arduino using TEGs and a battery. This shield provides power to an LED, fans, and a light sensor used to detect light intensity.

    dacre


  • Skinny Sapphire Sonic Screwdriver

    Skinny Sapphire Sonic Screwdriver

    Here’s a detailed project description prompt that you can use to generate the circuit: --- ### Project Description for Circuit Generation **Project Title**: Vehicle-to-Vehicle (V2V) Communication System for Preventing Dangerous Overtaking Maneuvers **Objective**: The prime objective of this project is to develop and implement a Vehicle-to-Vehicle (V2V) communication system that enhances road safety by preventing dangerous overtaking maneuvers. This system will provide real-time alerts to drivers about the presence and intentions of nearby vehicles, reducing the risk of collisions and improving overall traffic flow on highways. **Components**: 1. **Microcontroller (e.g., Arduino)** 2. **GPS Module (NEO-6M)** 3. **LoRa Module (SX1272)** 4. **Audio/Visual Alert Systems (e.g., Buzzer, LEDs)** 5. **SD Card Module** 6. **LM7805 Voltage Regulator** 7. **9V Battery** **Connections**: 1. **Power Supply**: - **9V Battery**: - Positive to **LM7805 Voltage Regulator Input** - Negative to **Common Ground** - **LM7805 Voltage Regulator**: - Output to **5V Rail (VCC)** - Ground to **Common Ground** 2. **Microcontroller (e.g., Arduino)**: - **Power**: - VCC to **5V Rail (VCC)** - GND to **Common Ground** 3. **GPS Module (NEO-6M)**: - **Power**: - VCC to **5V Rail (VCC)** - GND to **Common Ground** - **Communication**: - TX to **RX (Digital Pin) of Microcontroller** - RX to **TX (Digital Pin) of Microcontroller** (if needed) 4. **LoRa Module (SX1272)**: - **Power**: - VCC to **3.3V or 5V (based on module specification)** - GND to **Common Ground** - **SPI Communication**: - MOSI to **MOSI (Digital Pin) of Microcontroller** - MISO to **MISO (Digital Pin) of Microcontroller** - SCK to **SCK (Digital Pin) of Microcontroller** - NSS to **CS (Digital Pin) of Microcontroller** 5. **Audio/Visual Alert System (Buzzer, LEDs)**: - **Buzzer**: - Positive to **Digital Output Pin** of Microcontroller through a resistor - Negative to **Common Ground** - **LEDs**: - Anode (Positive) to **Digital Output Pin** of Microcontroller through a resistor - Cathode (Negative) to **Common Ground** 6. **SD Card Module**: - **Power**: - VCC to **3.3V or 5V (based on module specification)** - GND to **Common Ground** - **SPI Communication**: - MOSI to **MOSI (Digital Pin) of Microcontroller** - MISO to **MISO (Digital Pin) of Microcontroller** - SCK to **SCK (Digital Pin) of Microcontroller** - CS to **Digital Pin of Microcontroller** **System Functionality**: - **System Initialization and Configuration**: Ensure the microcontroller and communication modules are correctly initialized and configured for optimal performance. - **GPS Signal Acquisition and Data Parsing**: Accurately acquire and parse GPS data to determine the vehicle's current location and speed. - **Vehicle Position and Speed Calculation**: Calculate precise vehicle position and speed in real-time to provide accurate data for communication. - **V2V Communication Establishment**: Establish a reliable communication link between vehicles using the LoRa module to transmit and receive data. - **Overtaking Intention Detection and Signal Transmission**: Detect overtaking intentions and transmit this information to nearby vehicles to alert them of potential hazards. - **Signal Reception and Processing by Nearby Vehicles**: Ensure nearby vehicles can receive and process overtaking signals to determine the position and speed of the overtaking vehicle. - **Driver Alert Generation**: Generate audio and visual alerts to inform drivers of the presence and intentions of nearby vehicles, especially during overtaking. - **Continuous Monitoring and Data Logging**: Continuously monitor the system's performance and log relevant data for analysis and future improvements.

    pushpashanmugam


  • STC3115 Module qnre

    STC3115 Module qnre

    This project is a Battery Management System (BMS) built around STMicroelectronics' STC3115AIQT battery monitor IC. It uses I2C for communication, features alarm management, and supports battery charging. The power supply, battery connection points, and debug interface are facilitated through connectors. #project #Template #charger #monitor #reusable #module #batterycharger #template #bms #STC3115 #stm

    yuchan


  • RT9525 Reference Design

    RT9525 Reference Design

    This is a reference design project for a battery charger based on the RT9525 battery charger IC from Richtek. Some key components are the IC itself (U1), various capacitors (like C1, C2, C3, C4), resistors (R1, R2, R3, R4), LEDs, and connectors. The circuit connects via battery, system voltage and various enable signals. #project #Template #charger #referenceDesign #batterycharger #template #bms #monitor #RT9525 #richtek #reference-design #polygon

    vasy_skral

    &

    cherepanyadima


  • RT9511 Reference Design

    RT9511 Reference Design

    This project is a reference design for a Fully Integrated Battery Charger with Two Step-Down Converters the RT9511 IC. Key components include various capacitors, resistors, inductors, and two AO3401A transistors. This charger can be a valuable design baseline for portable and handheld devices needing battery management solutions. #Template #charger #referenceDesign #batterycharger #template #bms #monitor #RT9511 #richtek #reference-design


  • STC3115 Module

    STC3115 Module

    This project is a Battery Management System (BMS) built around STMicroelectronics' STC3115AIQT battery monitor IC. It uses I2C for communication, features alarm management, and supports battery charging. The power supply, battery connection points, and debug interface are facilitated through connectors. #project #Template #charger #monitor #reusable #module #batterycharger #template #bms #STC3115 #stm

    &


  • Power Monitoring Distribution vcVu

    Power Monitoring Distribution vcVu

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • Power Monitoring Distribution 2W86

    Power Monitoring Distribution 2W86

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • Power Monitoring Distribution

    Power Monitoring Distribution

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • Power Monitoring Distribution

    Power Monitoring Distribution

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • Power Monitoring Distribution rdJT

    Power Monitoring Distribution rdJT

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • Power Monitoring Distribution

    Power Monitoring Distribution

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • Power Monitoring Distribution 2W86

    Power Monitoring Distribution 2W86

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • Power Monitoring Distribution mAKv

    Power Monitoring Distribution mAKv

    A rack-mount power distribution module with power monitoring and surge protection

    1 Comment


  • iot plant monitoring system

    iot plant monitoring system

    Project Title: Plant Monitoring and Irrigation System Overview: This system is based on the ESP32-S3 and is designed to manage irrigation for a multi-floor building. Key Features: Multi-Floor Operation: The system controls three separate floors. Each floor's irrigation can be managed independently. Irrigation and Pump Control: Each floor uses a solenoid valve to regulate water flow. The solenoid valves are operated via MOSFETs. A relay engages an AC water pump when a MOSFET triggers a solenoid valve. Hardware Interconnects: Screw Terminal connectors are added for connecting the solenoid valves and the motor pump. A DC Jack is included to supply power to the system. User Interface & Connectivity: Two JST connectors are provided for integrating an OLED display, a rotary encoder, and a pushbutton. Future enhancements may include the addition of soil moisture sensors. Remote Control: The system is designed for future integration with Blynk IoT. Blynk IoT will offer both manual control and timer-based irrigation modes for each floor.

    &


  • Plant Monitoring System IoT Template

    Plant Monitoring System IoT Template

    This project is a plant monitoring system that uses an ESP32-S3-MINI-1U-N8 microcontroller to automate plant care tasks. This system includes three Songle relays, multiple resistors, capacitors, and transistors, all powered at 3.3V, 5V, or 12V. It also incorporates a USB Type-C connector. #internetOfThings #referenceDesign #edgeComputing #espressif #template #iot #ESP32 #relay


  • Plant Monitoring System IoT Template

    Plant Monitoring System IoT Template

    This project is a plant monitoring system that uses an ESP32-S3-MINI-1U-N8 microcontroller to automate plant care tasks. This system includes three Songle relays, multiple resistors, capacitors, and transistors, all powered at 3.3V, 5V, or 12V. It also incorporates a USB Type-C connector. #internetOfThings #referenceDesign #edgeComputing #espressif #template #iot #ESP32 #relay


  • New Power Monitoring Distribution

    New Power Monitoring Distribution

    A rack-mount power distribution module with power monitoring and surge protection


  • Air monitoring system

    Air monitoring system

    an air monitoring system contains three sensors of gas, temperature and hunidity represented in the schematic by hree connectors and the system will be controlled by an stm32f103c8t6 MCU , it will contains also a regulator , a led for he detection of power , a connector and some resistors.


  • Power Monitoring Distribution

    Power Monitoring Distribution

    A rack-mount power distribution module with power monitoring and surge protection


  • Environmental Monitoring System

    Environmental Monitoring System

    Welcome to your new project. Imagine what you can build here.

    77 Comments